Unbiased organism-agnostic and highly sensitive signal peptide predictor with deep protein language model.

Junbo Shen, Qinze Yu, Shenyang Chen, Qingxiong Tan, Jingchen Li, Yu Li

Journal: Nature computational science 2024;4(1):29-42

PMID: 38177492

Abstract

Signal peptides (SPs) are essential to target and transfer transmembrane and secreted proteins to the correct positions. Many existing computational tools for predicting SPs disregard the extreme data imbalance problem and rely on additional group information of proteins. Here we introduce Unbiased Organism-agnostic Signal Peptide Network (USPNet), an SP classification and cleavage-site prediction deep learning method. Extensive experimental results show that USPNet substantially outperforms previous methods on classification performance by 10%. An SP-discovering pipeline with USPNet is designed to explore unprecedented SPs from metagenomic data. It reveals 347 SP candidates, with the lowest sequence identity between our candidates and the closest SP in the training dataset at only 13%. In addition, the template modeling scores between candidates and SPs in the training set are mostly above 0.8. The results showcase that USPNet has learnt the SP structure with raw amino acid sequences and the large protein language model, thereby enabling the discovery of unknown SPs.

© 2023. The Author(s), under exclusive licence to Springer Nature America, Inc.

Address: Department of Computer Science and Engineering, CUHK, Hong Kong SAR, China.; Department of Computer Science and Engineering, Washington University, St. Louis, MO, US.; The CUHK Shenzhen Research Institute, Shenzhen, China.; Georgia Institute of Technology, Atlanta, GA, US.; Department of Computer Science and Engineering, CUHK, Hong Kong SAR, China. [email protected].; The CUHK Shenzhen Research Institute, Shenzhen, China. [email protected].; Shanghai Artificial Intelligence Laboratory, Shanghai, China. [email protected].; Institute for Medical Engineering and Science, Massachusetts Institute of Technology, Cambridge, MA, USA. [email protected].; Wyss Institute for Biologically Inspired Engineering, Harvard University, Boston, MA, USA. [email protected].; Broad Institute of MIT and Harvard, Cambridge, MA, USA. [email protected].

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